The flow through pipe bends and elbows occurs in a wide range of applications. While many experimental data are available for such flows in the literature, their numerical simulation is less abundant. Here, we present highly-resolved simulations of laminar and turbulent water flow in a 90° pipe bend using Smoothed Particle Hydrodynamics (SPH) methods coupled to a Large-Eddy Simulation (LES) model for turbulence. Direct comparison with available experimental data is provided in terms of streamwise velocity profiles, turbulence intensity profiles and cross-sectional velocity maps at different stations upstream, inside and downstream of the pipe bend. The numerical results are in good agreement with the experimental data. In particular, maximu...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in ci...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The flow of dense fluids within thin-walled piping systems may lead to significant levels of Flow-In...
The steady and pulsative turbulent flows in curved pipes have been computed with two different model...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
Direct numerical simulation (DNS) has been performed for a spatially develop- ing 90 bend pipe ow to...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in ci...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in ci...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The flow of dense fluids within thin-walled piping systems may lead to significant levels of Flow-In...
The steady and pulsative turbulent flows in curved pipes have been computed with two different model...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
Direct numerical simulation (DNS) has been performed for a spatially develop- ing 90 bend pipe ow to...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in ci...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in ci...
The separated flow in two-dimensional bends is numerically simulated for a right-angled bend with di...